
arXiv: 1904.06603
The expansion of a modular graph function on a torus of modulus $��$ near the cusp is given by a Laurent polynomial in $y= ��\Im (��)$ with coefficients that are rational multiples of single-valued multiple zeta-values, apart from the leading term whose coefficient is rational and exponentially suppressed terms. We prove that the coefficients of the non-leading terms in the Laurent polynomial of the modular graph function $D_N(��)$ associated with a melon graph is free of irreducible multiple zeta-values and can be written as a polynomial in odd zeta-values with rational coefficients for arbitrary $N \geq 0$. The proof proceeds by expressing a generating function for $D_N(��)$ in terms of an integral over the Virasoro-Shapiro closed-string tree amplitude.
8 pages, various clarifications added in version 2
High Energy Physics - Theory, Modular graph function, Mathematics - Number Theory, High Energy Physics - Theory (hep-th), FOS: Mathematics, FOS: Physical sciences, Number Theory (math.NT), multiple zeta values
High Energy Physics - Theory, Modular graph function, Mathematics - Number Theory, High Energy Physics - Theory (hep-th), FOS: Mathematics, FOS: Physical sciences, Number Theory (math.NT), multiple zeta values
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